
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
JUNE 2014 P/N 709C006802 Rev: A00 Draft Corning HX™ Mid-Power DAS System User Manual Warranties P/N 709C006802 Page 2 Warranties Hardware Corning Optical Communications Wireless, Inc. (“Corning) warrants to the original purchaser (“Customer”) that for the duration of the warranty period, one (1) year, commencing on the date of shipment of the Hardware, unless otherwise agreed in writing by Corning (the “Hardware Warranty Period”), the Hardware furnished by Corning shall be free in all material respects from defects in material and workmanship, and shall conform to the applicable portions of the Specifications, as defined below (the “Hardware Warranty”). If notified by Customer of any such defects in material or workmanship or nonconformity with applicable portions of the Specifications within the Hardware Warranty Period, Corning Optical Communications shall promptly, at its own election and expense, repair or replace any such Hardware proven to be defective under the terms of this Hardware Warranty. Such repair or replacement shall be Customer’s sole remedy and Corning Optical Communications’ sole obligation in the event this Hardware Warranty is invoked. If any components comprising a part of the Hardware are replaced or repaired during the Hardware Warranty Period, the Hardware Warranty Period for such repaired or replaced components shall extend to the longer of (i) the balance of the Hardware Warranty Period or (ii) three (3) months from the date of repair or replacement. For purposes of this Warranty, “Specifications” shall mean the specifications and performance standards of the Products as set forth in documents published by Corning Optical Communications and delivered to Customer which contain technical specifications or performance standards for the Products. If Customer invokes this Hardware Warranty, it shall notify Corning promptly of the claimed defect. Customer will allow Corning to inspect the Hardware at Customer’s location, or to return the Hardware to Corning’s closest repair facility. For Hardware returned to Corning’s repair facility, Customer shall be responsible for payment of all transportation and freight costs (including insurance) to Corning’ repair facility, and Corning shall be responsible for all transportation and freight costs (including insurance) incurred in connection with the shipment of such Hardware to other repair facilities of Corning and/or its return to Customer. Notwithstanding the foregoing, in no event will Corning be liable for damage to Products resulting from improper handling during or after shipment, misuse, neglect, improper installation, operation or repair (other than by authorized Corning personnel), alteration, accident, or for any other cause not attributable to defects in materials or workmanship on the part of Corning. Corning shall not reimburse or make any allowance to Customer for any labor charges incurred by Customer for replacement or repair of any goods unless such charges are authorized in advance in writing by Corning. Software Warranty Corning warrants to the original purchaser (“Customer”) that for the duration of the warranty period, one (1) year, commencing on the date of shipment of the Software, unless otherwise agreed in writing by Corning (the “Software Warranty Period”), the Software shall conform with, and perform the functions set forth in the Specifications, and shall be free from defects in material or workmanship (the “Software Warranty”). In the event the Software is proven to be defective under the terms of this Software Warranty, Corning shall correct such defects or failure and ensure that the Software conforms with, and performs the functions set forth in, the Specifications. Customer will allow Corning to inspect the Software at Customer’s location or to return it to Corning’s closest repair facility. Notwithstanding the foregoing, Corning shall have no obligation under the Software Warranty if the Software is modified or used with hardware or software not supplied or approved by Corning or if the Software is subject to abuse, improper installation or application, accident, electrical or environmental over-stress, negligence in use, storage, transportation or handling. Third-party software distributed with the Software may carry certain warranties which, to the maximum extent allowed by law, Corning hereby assigns, transfers and otherwise conveys to Customer, provided, however, that Corning itself provides no warranty of any kind, express, implied, statutory or otherwise, for any third-party software provided hereunder. Corning does not warrant any hardware, software or services not provided by Corning. Warranties P/N 709C006802 Page 3 THIS WARRANTY IS THE ONLY WARRANTY MADE BY CORNING AND IS IN LIEU OF ALL OTHER WARRANTIES, EXPRESS OR IMPLIED INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE. CORNING SHALL NOT BE LIABLE FOR ANY OTHER DAMAGE INCLUDING, BUT NOT LIMITED TO, INDIRECT, SPECIAL OR CONSEQUENTIAL DAMAGES ARISING OUT OF OR IN CONNECTION WITH FURNISHING OF GOODS, PARTS AND SERVICE HEREUNDER, OR THE PERFORMANCE, USE OF, OR INABILITY TO USE THE GOODS, PARTS AND SERVICE. CORNING SALES AGENTS OR REPRESENTATIVES ARE NOT AUTHORIZED TO MAKE COMMITMENTS ON WARRANTY RETURNS. Returns In the event that it is necessary to return any product against above warranty, the following procedure shall be followed: 1. Return authorization is to be received from Corning prior to returning any unit. Advise Corning of the model, Serial number, and discrepancy. The unit may then be forwarded to Corning Optical Communications, transportation prepaid. Devices returned collect or without authorization may not be accepted. 2. Prior to repair, Corning will advise the customer of our test results and any charges for repairing customer-caused problems or out-of-warranty conditions etc. 3. Repaired products are warranted for the balance of the original warranty period…
Text truncated - open the document above for the full version.
CSS CN-727 -40dB Coupler, 698-2700MHz, N-Male-to-N-Female All Specifications are subject to change. Refer to www.cssantenna.com for the most current information www.cssantenna.com 410-612-0080 [email protected] Page 1 of 2 2/16/2012 Electrical Specifications Coupling, dB VSWR/Return Loss, dB, Maximum Insertion Loss, dB, Maximum Impedance, ohms Maximum Power, CW Intermodulation (2x20w), IM3, dBc, Maximum Mechanical Specifications Dimensions, Length/Diameter Connector (Quantity) Type Coupling Connector (Quantity) Type Coupling Cap (Quantity) Type(1) QMA Male with weather seal Mating Cycles, Minimum Package Quantity Temperature Range ApplicationSuitable for outdoor with proper connections 2002/95/EC (RoHS) Order Information ModelDescription CSS CN-727Coupler, N-Female Bulkhead, N-Male, -40dB QMA Female, Straight Environmental Specifications -45°C to +85°C Compliant (1) QMA Female 500 1 Frequency Band, MHz -40 +/-1dB @1,700MHz 1.15:1/-23.0 3.0/0.87 in (77/22 mm), Excludes QMA (1) N-Female Bulkhead, (1) N-Male 0.2 50 698-2700 250 -150 •Allows for Non-Obtrusive Testing •Compact Design •Broadband 698-2700MHz •QMA Coupling Port •Suitable for Indoor or Outdoor DAS •Every unit is PIM Certified CSS CN-727 -40dB Coupler, 698-2700MHz, N-Male-to-N-Female All Specifications are subject to change. Refer to www.cssantenna.com for the most current information www.cssantenna.com 410-612-0080 [email protected] Page 2 of 2 2/16/2012 Coupler Measured @ 700-2700MHz Mechanical Outline Drawing Frequ en cy (MHz) Coupling dB, Return Loss dB -50 -47.5 -45 -42.5 -40 -37.5 -35 -32.5 -30 -27.5 -25 Frequ en cy (MHz) 700 900110013001500170019002100230025002700 Coupling dB Return Loss dB 1b v 1a v b) -36.168 a) -40.106 1) 1700 MHz
Date: March 31, 2014 FEDERAL COMMUNICATIONS COMMISSIONS Authorization and Evaluation Division 7435 Oakland Mills Road Columbia, MD 21046 Subject: Confidentiality Request regarding application for certification of FCC ID: OJFHXP19S80A17L70 In accordance with Sections 0.457 and 0.459 of the Commission’s Rules, MobileAccess Networks hereby requests long-term confidential treatment of information accompanying this application as outlined below: CONF APPENDIX HX-5 BlkDia.pdf CONF APPENDIX HX-5 Schem.pdf CONF APPENDIX HX-5 PartlsLst.pdf The above materials contain proprietary and confidential information not customarily released to the public. The public disclosure of these materials provides unjustified benefits to its competitors in the market. Product Manager Corning Mobileaccess 8391 Old Courthouse Rd Suite 300 Vienna VA 22182-3819 Corning MobileAccess 8391 Old Courthouse Road, Suite 300, Vienna, VA 22182 Tel: +1(866)436-9266, +1(703)848-0200 TAC: +1(800)787-1266, Fax: +1(703)848-0280 www.corning.com/mobileaccess
Date: March 31, 2014 To: Timco Engineering Inc. To Whom It May Concern We hereby authorize Mr. Shaike Raz of I.T.L. (Product Testing) Ltd (ITL) to sign Form 731 on our behalf regarding the FCC Certification Process for the following application: FCC ID: OJFHXP19S80A17L70 Sincerely, Steve Blum Product Manager Corning Mobileaccess 8391 Old Courthouse Rd Suite 300 Vienna VA 22182-3819 Corning MobileAccess 8391 Old Courthouse Road, Suite 300, Vienna, VA 22182 Tel: +1(866)436-9266, +1(703)848-0200 TAC: +1(800)787-1266, Fax: +1(703)848-0280 www.corning.com/mobileaccess
Date: March 31, 2014 To: Timco Engineering Inc. To Whom It May Concern We hereby authorize Mr. Shaike Raz of I.T.L. (Product Testing) Ltd (ITL) to act on our behalf regarding the FCC ID Certification Process for the following application: FCC ID: OJFHXP19S80A17L70 Sincerely, Steve Blum Product Manager Corning Mobileaccess 8391 Old Courthouse Rd Suite 300 Vienna VA 22182-3819 Corning MobileAccess 8391 Old Courthouse Road, Suite 300, Vienna, VA 22182 Tel: +1(866)436-9266, +1(703)848-0200 TAC: +1(800)787-1266, Fax: +1(703)848-0280 www.corning.com/mobileaccess
TITLE: Drawn By: Yaakov S. 13/06/06 Yossi G. Name:Signature:Date: Check: Approve: MA1K, FCC LABEL FOR HX-5 PRODUCT P/N : Drawing No : Rev : B00 Paper Size : A4 Sh : 1 of 1 This document contain proprietary information and is the property of MobileAcces Ltd. No use, Disclosure or reproduction is granted to any third parties without explicit written permission of confidential Ltd.MobileAccess REVISIONS R EV. DESCRIPTIONDATEAPPROVED ECO No: NOTES : 1. ALL TEXT PRINTED SIZE 7 AND FONT STYLE TIMES NEW ROMAN. 2. POSITION COMPANY LOGO ACCORDING TO DIMENSION SPECIFIED. Alona M. 2)This device must accept any interference received , This device complies with Part 15 of the FCC Rules. Operation is subject to the following two conditions: 1)This device may not cause harmful interference ,and operation. including interference that may cause undesired FCC ID:OJFHXP19S80A17L70 Yaakov S. Yossi G. Alona M. 13/06/06 13/06/06 Golan Building Hagolan street & Hanegev street Airport City 70151 . CORNING MobileAccess Ltd.
AWS1200 Add-ON Operational Description January 2014 PAGE 1 DRAFT HX-5 Operation Description and Power Protection Mechanisms Simplified block Diagram PCS-G 1850-1915MHz AWS 1710-1755MHz AWS 2110-2155MHz PCS-G 1930-1995MHz FSK Modem CPU 2-Way Splitter 2-Way Splitter Gain Blk F S K SP4T PAD P DET FSK Modem Diplexer LNA LNA LNA LNA Diplexer DCA DCA DCA DCA CELL-SMR 862-894MHz LTE700 728-257MHz Gain Blk Gain Blk CELL-SMR 817-849MHz LTE700 698-716MHz &777-787MHz U L _ R e c i e v e d S i g n a l m e a s 2-Way Splitter 2-Way Splitter Diplexer SAW SAW SAW DCA Gain Blk Gain Blk Gain Blk Gain Blk SAW SAW SAW SAW Diplexer SP4T PAD P DET Gain Blk Gain Blk Gain Blk Gain Blk DCA DCA DCA DCA DCA DCA DCA Gain Blk Uplink Downlink Downlink Uplink Photodiode Laser PA PA PA PA Heat sink Heat sink Cavity 8:1 Multiplexer filter Power Supply 28V F S K SAW Dip DL Pre PA Ant Port Coupling Port 40dB PA Control and Monitoring BUSPA Control and Monitoring BUS RHU Operation Description The HX-5 consists of RHU, 4 Power Amplifiers (2 on each heat sink), Cavity Multiplexer Filter and a Power supply. HX-5 supports the bands: Band name UL Frequency bands DL Frequency bands LTE700 698-716MHz & 777-787MHz 728-757MHz CELL SMR 817-849MHz 862-894MHz PCS-G 1850-1915MHz 1930-1995MHz AWS 1710-1755MHz 2110-2155MHz The DL path signal is received thru the fiber into the photo diode. From this point it is amplified. The FSK controlling and management signal is separated from the main math using a duplexer filter. From that point the signal is amplified, then splitted to High band and low band, amplified again and splitted into two bands. Using DCAs the power levels are balanced between the bands. As the bands are established, then they are amplified again and filtered to suppress for each band, any non-relevant band. Before injecting the band signal to the power amplifier, the signal is coupled and measured to sense the signal strength before the PA. When the band is amplified by the last stage, PA, it reaches to the desired power level, maintaining the linearity required to comply with regulation limits and as well deliver the required signal quality for any kind of modulation. The PA output is monitored for limiting and protection purposes. The Cavity Multiplexer then, combines all the power amplifiers outputs into the Antenna port. Additional system port is the coupling port that is used for monitoring the DL signal strength without the need of disconnecting the antenna port. The UL path starts at the right side. Signal from Antenna passes thru cavity Mux path, per UL band, the first component is the Limiting controllable attenuator (DCA) then amplified by LNA chain, filtered again, balanced for gain with the DCA and samples with a coupler AWS1200 Add-ON Operational Description January 2014 PAGE 2 DRAFT (used for UL Limiter) before it’s combined with other UL paths. Last duplexer before the Laser diode is combining FSK Tx into this path as well. From this point the signal goes in optics thru a fiber to the head end. In addition to this, the unit consists of Power Supply section that feeds all the parts and digital control area that manages all indications and alarms, communications etc. Over Power Protection Mechanism Since there are 2 signal direction for each band, the system has two different protection per band as well. 1. UL Input signal protection. 2. DL Output signal protection UL Input signal protection – UL Limiter UL Path can face a strong input signal that comes from passing by mobile phone users. If this mobile phone, from some reason is located too close to antenna, there might be need of protection. This protection is implemented by Input limiter. The UL detector is calibrated per band, during production phase to measure the UL input signal. This calibration is stored into the unit. When a signal appears at the antenna port, and this signal is stronger than the threshold of -40dBm, the input DCA is activated to protect the input stages of the UL path. When the strong interfering signal is reduced, or disappeared, the Limiter is released. DL Output signal protection – DL Limiter DL Path detectors are also calibrated for each band during the production phase, so system could read the output power levels. During the life of the system, the output power is measured and compared to the required output power. When, from some reason, the output signal trying to rise above the required output signal level, the gain is reduced by DCAs that are located in the RHU DL paths, in order to keep the output power that was defined at the commissioning stage. When the strong signal is reduced back, the Limiter is released, and the output power returns to the required level.
Date: 2014 Apr 1 st DECLARATION The maximum output power level (dBm) and the tolerance (±dB) that the HX-5 device is tuned to during the manufacturing process are as follows: Frequency Band (MHz) Max. Power Level (dBm) Deviation (dB) Emission Designator Note 728-758 33 2 all 2110-2155 33 2 all 1930 - 1995 33 2 all 869-894 33 2 all Max Power Level is 30 dBm if operated simultaneously 862-869 33 2 all Sincerely, Steve Blum Product Manager Corning Mobileaccess 8391 Old Courthouse Rd Suite 300 Vienna VA 22182-3819 Corning MobileAccess 8391 Old Courthouse Road, Suite 300, Vienna, VA 22182 Tel: +1(866)436-9266, +1(703)848-0200 TAC: +1(800)787-1266, Fax: +1(703)848-0280 www.corning.com/mobileaccess
2 1 cm mW 2 498.01500/ cm mW f 2 587.01500/ cm mW f 2 1 cm mW R.F Exposure/Safety Calculation for HX-5 The E.U.T. is rack or wall mounted. The typical distance between the E.U.T. and the general population is >115 cm. Calculation of Maximum Permissible Exposure (MPE) Based on Section 1.1307(b)(1) Requirements (a) FCC limit at 881.0 MHz is: FCC limit at 1960 MHz is: FCC limit at 747 MHz is: FCC limit at 2135 MHz is: Using table 1 of Section 1.1307(b)(1) limit for general population/uncontrolled exposures, the above level is an average over 30 minutes. (b) The power density produced by the E.U.T. is P t - Transmitted Peak Power (worst case) G T - Antenna Gain, 12.5 dBi = 17.8 numeric R- Distance from Transmitter 115cm 2 4R GP S tt (c) Peak power density at worst case continuous transmission: Band Modulation Pt (mW) Antenna type G T (dBi) G T numeric R (cm) S AV (mW/cm 2 ) Spec (mW/cm 2 ) CELL 64QAM 0.00489 External 12.5 17.8 115 5.24E-07 0.587 GSM 0.00354 External 12.5 17.8 115 3.79E-07 0.587 W-CDMA 0.00561 External 12.5 17.8 115 6.01E-07 0.587 PCS 64QAM 0.00447 External 12.5 17.8 115 4.79E-07 1 GSM 0.00206 External 12.5 17.8 115 2.21E-07 1 W-CDMA 0.00344 External 12.5 17.8 115 3.68E-07 1 LTE QPSK 0.00232 External 12.5 17.8 115 2.48E-07 0.498 16QAM 0.00228 External 12.5 17.8 115 2.44E-07 0.498 64QAM 0.00216 External 12.5 17.8 115 2.31E-07 0.498 AWS GSM 0.00239 External 12.5 17.8 115 2.56E-07 1 64QAM 0.00294 External 12.5 17.8 115 3.15E-07 1 W-CDMA 0.00369 External 12.5 17.8 115 3.95E-07 1 IDEN 64QAM 0.00208 External 12.5 17.8 115 2.23E-07 0.576 GSM 0.00207 External 12.5 17.8 115 2.22E-07 0.576 W-CDMA 0.00204 External 12.5 17.8 115 2.18E-07 0.576
Test Report E137750.01 Corning Mobile Access Page 1 of 115 FCC ACC M Ver 1.1 05Mayl 2000 DATE: 11 March 2014 I.T.L. (PRODUCT TESTING) LTD. FCC Radio Test Report for Corning Mobile Access Equipment under test: Mid Power Remote Unit HX-5 iDEN-CELL-PCS-LTE-AWS (iDEN-CELL-PCS Section) Written by: _____________________________ R. Pinchuck, Documentation Approved by: _____________________________ A.Sharabi, Test Engineer Approved by: _____________________________ I. Raz, EMC Laboratory Manager This report must not be reproduced, except in full, without the written permission of I.T.L. (Product Testing) Ltd. This report relates only to items tested. Test Report E137750.01 Corning Mobile Access Page 2 of 115 FCC ACC M Ver 1.1 05Mayl 2000 Measurement/Technical Report for Corning Mobile Access Mid Power Remote Unit FCC ID: OJFHXP19S80A17L70 This report concerns: Original Grant: X Class II change: Class I change: Equipment type: PCS Licensed Transmitter Limits used: 47CFR Parts 2, 22, 24, 27, 90 Measurement procedure used is ANSI C63.4-2003. Substitution Method used as in ANSI/TIA-603-C: 2004 Application for Certification Applicant for this device: prepared by: (different from "prepared by") R. Pinchuck Steve Blum ITL (Product Testing) Ltd. Corning MobileAccess 1 Batsheva St. 8391 Old Courthouse Rd., Suite #300 Lod 71100 Vienna, VA. 22182 Israel U.S.A. e-mail [email protected] Tel: +1-541-758-2880 Fax: +1-703-848-0260 e-mail: [email protected] Test Report E137750.01 Corning Mobile Access Page 3 of 115 FCC ACC M Ver 1.1 05Mayl 2000 TABLE OF CONTENTS 1. GENERAL INFORMATION ------------------------------------------------------------------------------- 5 1.1 Administrative Information ................................................................................. 5 1.2 List of Accreditations ......................................................................................... 6 1.3 Product Description ........................................................................................... 7 1.4 Test Methodology .............................................................................................. 7 1.5 Test Facility ....................................................................................................... 7 1.6 Measurement Uncertainty ................................................................................. 8 2. SYSTEM TEST CONFIGURATION --------------------------------------------------------------------- 9 2.1 Justification ........................................................................................................ 9 2.2 EUT Exercise Software ..................................................................................... 9 2.3 Special Accessories .......................................................................................... 9 2.4 Equipment Modifications ................................................................................... 9 2.5 Configuration of Tested System ...................................................................... 10 3. CONDUCTED AND RADIATED MEASUREMENT TEST SET-UPS PHOTOS ------------- 11 4. PEAK OUTPUT POWER CELL ------------------------------------------------------------------------ 14 4.1 Test Specification ............................................................................................ 14 4.2 Test procedure ................................................................................................ 14 4.3 Test Results..................................................................................................... 14 4.4 Test Equipment Used; Peak Output Power CELL ........................................... 19 5. OCCUPIED BANDWIDTH CELL ----------------------------------------------------------------------- 20 5.1 Test Specification ............................................................................................ 20 5.2 Test Procedure ................................................................................................ 20 5.3 Test Results..................................................................................................... 21 5.4 Test Equipment Used; Occupied Bandwidth CELL ......................................... 31 6. OUT OF BAND EMISSIONS AT ANTENNA TERMINALS CELL ------------------------------ 32 6.1 Test Specification ............................................................................................ 32 6.2 Test procedure ................................................................................................ 32 6.3 Test Results..................................................................................................... 32 6.4 Test Equipment Used; Out of Band Emission at Antenna Terminals CELL .... 36 7. BAND EDGE SPECTRUM CELL----------------------------------------------------------------------- 37 7.1 Test Specification ............................................................................................ 37 7.2 Test procedure ................................................................................................ 37 7.3 Test Results..................................................................................................... 38 7.4 Test Equipment Used; Band Edge Spectrum CELL ........................................ 42 8. OUT OF BAND EMISSIONS (RADIATED) CELL -------------------------------------------------- 43 8.1 Test Specification ............................................................................................ 43 8.2 Test Procedure ................................................................................................ 43 8.3 Test Results..................................................................................................... 44 8.4 Test Instrumentation Used, Radiated Measurements CELL ........................... 45 9. PEAK OUTPUT POWER (IDEN) ----------------------------------------------------------------------- 46 9.1 Test Specification ......…
Text truncated - open the document above for the full version.
Test Report E137751.00 Corning MobileAccess Page 1 of 89 FCC ACC M Ver 1.1 05Mayl 2000 DATE: 13 March 2014 I.T.L. (PRODUCT TESTING) LTD. FCC Radio Test Report for Corning MobileAccess Equipment under test: Mid Power Remote Unit HX-5 iDEN-CELL-PCS-LTE-AWS (LTE/AWS Section) Written by: _____________________________ R. Pinchuck, Documentation Approved by: _____________________________ A. Sharabi, Test Engineer Approved by: _____________________________ I. Raz, EMC Laboratory Manager This report must not be reproduced, except in full, without the written permission of I.T.L. (Product Testing) Ltd. This report relates only to items tested. Test Report E137751.00 Corning MobileAccess Page 2 of 89 FCC ACC M Ver 1.1 05Mayl 2000 Measurement/Technical Report for Corning MobileAccess Mid Power Remote Unit HX-5 FCC ID: OJFHXP19S80A17L70 This report concerns: Original Grant: X Class II change: Class I change: Equipment type: PCS Licensed Transmitter Limits used: 47CFR Parts 2; 27 Measurement procedure used is ANSI C63.4-2003. Substitution Method used as in ANSI/TIA-603-C: 2004 Application for Certification Applicant for this device: prepared by: (different from "prepared by") R.Pinchuck Steve Blum ITL (Product Testing) Ltd. Corning MobileAccess Kfar Bin Nun 8391 Old Courthouse Rd., Suite #300 D.N. Shimshon 99780 Vienna, VA. 22182 Israel U.S.A. e-mail [email protected] Tel: +1-541-758-2880 Fax: +1-703-848-0260 e-mail: [email protected] Test Report E137751.00 Corning MobileAccess Page 3 of 89 FCC ACC M Ver 1.1 05Mayl 2000 TABLE OF CONTENTS 1. GENERAL INFORMATION ------------------------------------------------------------------------------- 5 1.1 Administrative Information ................................................................................. 5 1.2 List of Accreditations ......................................................................................... 6 1.3 Product Description ........................................................................................... 7 1.4 Test Methodology .............................................................................................. 8 1.5 Test Facility ....................................................................................................... 8 1.6 Measurement Uncertainty ................................................................................. 8 2. SYSTEM TEST CONFIGURATION --------------------------------------------------------------------- 9 2.1 Justification ........................................................................................................ 9 2.2 EUT Exercise Software ................................................................................... 10 2.3 Special Accessories ........................................................................................ 10 2.4 Equipment Modifications ................................................................................. 10 2.5 Configuration of Tested System ...................................................................... 11 3. TEST SET-UP PHOTOS ---------------------------------------------------------------------------------- 12 4. PEAK OUTPUT POWER LTE --------------------------------------------------------------------------- 15 4.1 Test Specification ............................................................................................ 15 4.2 Test procedure ................................................................................................ 15 4.3 Test Results..................................................................................................... 15 4.4 Test Equipment Used; Peak Output Power LTE ............................................. 20 5. OCCUPIED BANDWIDTH LTE ------------------------------------------------------------------------- 21 5.1 Test Specification ............................................................................................ 21 5.2 Test Procedure ................................................................................................ 21 5.3 Test Results..................................................................................................... 22 5.4 Test Equipment Used; Occupied Bandwidth LTE – ........................................ 32 6. OUT OF BAND EMISSIONS AT ANTENNA TERMINALS LTE -------------------------------- 33 6.1 Test Specification ............................................................................................ 33 6.2 Test procedure ................................................................................................ 33 6.3 Test Results..................................................................................................... 33 6.4 Test Equipment Used; Out of Band Emissions at Antenna Terminals LTE .... 35 7. BAND EDGE SPECTRUM LTE ------------------------------------------------------------------------- 36 7.1 Test Specification ............................................................................................ 36 7.2 Test procedure ................................................................................................ 36 7.3 Results ............................................................................................................. 36 7.4 Test Equipment Used; Band Edge Spectrum LTE .......................................... 40 8. SPURIOUS RADIATED EMISSION LTE ------------------------------------------------------------- 41 8.1 Test Specification ............................................................................................ 41 8.2 Test Procedure ................................................................................................ 41 8.3 Test Results..................................................................................................... 42 8.4 Test Instrumentation Used, Radiated Measurements LTE ............................. 43 9. PEAK OUTPUT POWER AWS ----------------------------------------------------------…
Text truncated - open the document above for the full version.
| # | Rule Parts | Frequency Range | Power Output | Emission | Tolerance |
|---|---|---|---|---|---|
| 15 | 27 | 2.11 GHz - 2.15 GHz | 3.69 W | G7D | Amp |

Remote Unit, Radio Node
Equipment Class
B2I - Part 20 Industrial Booster (CMRS)
HRU Digital High Power Amplifier Module supporting PCS
Equipment Class
B2I - Part 20 Industrial Booster (CMRS)
Low Band dRAU
Equipment Class
B2I - Part 20 Industrial Booster (CMRS)
digital Medium-power Remote Unit
Equipment Class
B2I - Part 20 Industrial Booster (CMRS)
digital Medium-power Remote Unit
Equipment Class
B2I - Part 20 Industrial Booster (CMRS)